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Research on structural optimization of the flexible magnetoelectric torque unimorph device

机译:柔性磁电扭矩下无人物装置结构优化研究

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The giant magnetoelectric (ME) effect origining from the coupling of piezoelectricity and magnetic torque in flexible magnetoelectric torque (MET) unimorph devices has been investigated. The relation between the ME voltage coefficient and the thickness ratio of piezoelectric / elastic layers can be acquired from the experiments. Stainless steel, brass, and aluminum have been used as elastic layer for the devices. The experiment has verified the optimized thickness of elastic layers respectively. Experimental data indicates that the ME voltage coefficient at low frequency and at the resonance could be adjusted by changing the sample's elastic layers and thickness. This research has provided guides for engineers to constructed low cost and passive ME device with giant ME effect.
机译:研究了来自压电性和磁力扭矩耦合的巨型磁电(ME)效应已经研究过柔性磁电扭矩(MET)单身圆形设备。可以从实验中获取ME电压系数与压电/弹性层的厚度比之间的关系。不锈钢,黄铜和铝已被用作器件的弹性层。实验分别验证了弹性层的优化厚度。实验数据表明,通过改变样品的弹性层和厚度,可以调节低频和谐振处的ME电压系数。这项研究为工程师提供了指南,为具有巨头ME效果构建了低成本和被动ME设备。

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